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Biomedical subjects

A Coutinho

Publications and source records attributed to A Coutinho.

At least 19 recordsLinked to original sources

Transplantation tolerance is unrelated to superantigen-dependent deletion and anergy.

C57BL/6 (B6; I-E-, Mls-2b) nude mice, reconstituted at birth with thymic epithelium (TE) from BALB/c (BA; I-E+, Mls-2a) day 10 embryos (E10), permanently accepted BALB/c skin, when grafted as adults. T-cell receptor repertoire analyses in the periphery of these mice revealed no difference in frequencies of I-E/superantigen-reactive T-cell receptor V beta families, as compared to chimeras constructed with syngeneic B6 E10 TE. T lymphocytes bearing V beta 3, V beta 5, and V beta 11 T-cell receptors, from either allogeneic or syngeneic TE chimeras, responded equally well to in vitro receptor-dependent stimulation. Similar results were obtained with nude mice reconstituted at birth with E14 thymuses, already colonized by hemopoietic cells. These observations indicate that neither TE cells nor the progenies of hemopoietic precursors that colonize the thymus up to E14 express or functionally present the superantigens addressed here; it follows that tolerance to skin grafts and superantigen-related T-cell deletions are unrelated phenomena.

Animals

Differential expression of VH gene families in peripheral B cell repertoires of newborn or adult immunoglobulin H chain congenic mice.

The pattern of VH gene family expression in the primary B cell repertoire of the mouse is strain dependent. In C57Bl/6 mice, the VH J558 family is expressed by more than 45% of the cells, while the expression of VH 7183, VH Q52, and VH 36-60 families together does not exceed 20%. In BALB/c mice, relative expression of VH J558 is lower than 35%, while the sum of the other three families reaches 25%. To assess which genetic loci control strain-specific VH gene family expression, we studied VH gene family usage in splenic B cell repertoires of different congenic strains of mice. Changes in major histocompatibility complex or immunoglobulin (Ig) K light chain genes did not modify VH gene family expression in adult mice. Differences at the IgH locus, however, modified VH gene family usage. In 1-d-old mice, the strain-specific VH gene family expression pattern is determined by the IgH haplotype. In adult mice, the VH gene family expression pattern of resting B cells is independent of the IgH locus and follows the genetic background of the congenic strain, while it is determined by the IgH haplotype among Ig-secreting spleen cells. In F1(B6 x BALB/c) mice, each of the two spleen B cell populations, sorted on the basis of mu heavy chain allotype expression, shows an independent VH gene family expression pattern, determined by the IgH locus. The implications of these results in the control of VH gene family expression, and in the selection of peripheral B cell repertoires are discussed.

Aging

Absorption and fluorescence spectra of polyene antibiotics in the presence of cholesterol.

The alterations in the absorption and fluorescence spectra observed for the polyene antibiotics filipin and nystatin in the presence of cholesterol are due to an exciton interaction (polyene aggregates) and cannot be attributed to a specific sterol-antibiotic complex. Filipin and nystatin molecules partition into the sterol aggregates, these structures being very efficient to induce exciton interaction; the observed splitting profile indicates that the chromophores are in a stacked arrangement (parallel transition dipoles). For filipin incorporated in lipid bilayers, the sterol is able to induce the same type of aggregate, at variance with nystatin.

1,2-Dipalmitoylphosphatidylcholine

Origin of CD5+ B cells and natural IgM-secreting cells: reconstitution potential of adult bone marrow, spleen and peritoneal cells.

The bulk of natural IgM secretion is currently attributed to peritoneal CD5+ B cells and their progeny, believed to be independent of adult bone marrow precursors. We have compared the capacity of peritoneal or splenic cells from normal adult mice to generate serum IgM after transfer into allotype-congenic, irradiated and bone marrow-protected mice. Recipients of either cell population produced donor-allotype IgM-secreting cells in the spleen, and had donor-derived serum IgM. In both cases as well, recipient IgM secretion recovered to control levels. Since the spleen cell-derived natural IgM production could result from expansion of CD5+ B cells present in the inoculum, we next investigated the ability of Ig- bone marrow (BM) cells (Ig- BM) to reconstitute natural IgM secretion in irradiated mice. This cell population was most efficient in reconstituting donor-derived IgM secretion. The origin and phenotype (IgM, CD5) of B cells present in spleen and peritoneum of recipient mice were also analyzed. In agreement with the high level of donor IgM-secreting cells, transfers of splenic and Ig- BM cells fully reconstitute donor B cells in spleen and peritoneum and inhibit reconstitution from host origin. In contrast, donor peritoneal cells reconstitute B cells very poorly in spleen and allow for reconstitution by host cells. Furthermore, Ig- BM cells as well as splenic or peritoneal donor cells, all reconstitute CD5+ B cells in the peritoneum of recipient mice. Interestingly, the fraction of IgM+ cells of each allotype that differentiate to IgM secretion varies widely, but normal levels of IgM are established even when the number of donor B cells present in the animal is very limited.

Animals

Thymic epithelium induces neither clonal deletion nor anergy to Mls 1a antigens.

Grafting of thymic anlagen from day-10 DBA/2 (H-2d; Mls-1a) embryos to newborn athymic BALB/c (H-2d; Mls-1b) mice leads to reconstitution of T cell populations in the recipients. Analysis of adult chimeras shows that their V beta T cell receptor (TcR) repertoires, particularly V beta 6 and V beta 8.1, do not significantly differ in most animals (10 out of 13) from those scored in control chimeras that received syngeneic thymic anlagen. In all cases analyzed, such Mls-1a-reactive T cells could be stimulated at levels comparable to control responses, both in vitro and in vivo. The few cases in which Mls-1a reactive V beta TcR were reduced seem to reflect the variability in TcR V beta repertoires found in this experimental system. In contrast, BALB/c mice, injected at birth with DBA/2 spleen cells show a marked, albeit variable, reduction in the frequencies of V beta 6- and V beta 8.1-bearing CD4+ T cells, and lower frequencies of Mls-1a-reactive T cells in limiting dilution analyses. It appears, however, that V beta 6- and V beta 8.1-bearing T cells remaining in these mice are functionally competent. We conclude that Mls-1 antigens are not expressed by thymic epithelium.

Animals

On the origin of natural IgM in immunoglobulin transgenic mice.

Surface transgenic IgM was expressed by > 95% of small resting splenic B cells but only by 50% of CD5+ and CD5- peritoneal B cells from the mu-transgenic mouse line M54. Transgenic male M54 were crossed with female CBA/N mice carrying the Xid defect. Offspring F1 animals carrying the transgene were analysed for the presence of transgenic and endogenous IgM expressed both in the serum as well as on the surface of splenic and peritoneal B cells. We found that the levels of serum IgM coded for by the transgene were similar in both F1 male, which lack CD5 B cells, and female transgenic mice, which have CD5 B cells. Thus, the Xid defect does not influence the expression of the transgene at the level of naturally activated plasma cells, a finding substantiated by the fact that both male and female naturally activated splenic plasma cells express the transgene at the same frequency. F1 hybrid mice, like transgenic C57BI/6 M54 mice, have naturally activated splenic plasma cells that overexpress endogenous IgM coded for by the VH gene family Q52. The data indicate that normal serum IgM is not derived from CD5+ B cells and that the serum IgM coded for by the mu-transgene from M54 is produced at normal levels even in the male F1 mouse which lacks CD5+ B cells.

Animals

V-region-related and -unrelated immunosuppression accompanying infections.

This paper discusses current evidence for the relationship between polyclonal lymphocyte activation, specific immunosuppression with decreased resistance, and autoimmune pathology, that are all often found associated with infections by a variety of virus, bacteria and parasites. The central question of class determination of immune effector activities is considered in the context of the cellular targets for nonspecific mitogenic activities associated with infection. A model is presented to integrate these findings: mitogens produced by the microorganism or the infected cells are preferentially active on CD5 B cells; the resulting over-production of IL-10 will tend to bias all immune activities into a Th2-mode of effector functions, with high titers of polyclonal antibodies and little or no production of gamma IFN and other "inflammatory" lymphokines that often mediate resistance. In turn, these conditions allow for parasite persistence and the corresponding long-term disregulation of self-directed immune reactivities, resulting in autoimmunity in the chronic phase. This model would predict that selective immunization with the mitogenic principles involved in deregulation, could stand better chances than strategies of vaccination based on immunopotentiation against other, functionally neutral antigenic epitopes. It is argued, however, that the complexity of immune responses and their regulation, together with our ignorance on the genetic controls of class-determination, offer poor prospects for a scientifically-based, rational development of vaccines in the near future. It is suggested that empirically-based and technologically developed vaccines might succeed, while basic scientific approaches are reinforced and given the time to provide a better understanding of those processes.

Animals

Renal abnormalities in microfilaremic patients with Bancroftian filariasis.

To determine the frequency of renal abnormalities occurring with Bancroftian filarial infections and to assess the effects of treatment on such abnormalities, we initiated a prospective, hospital-based study of 20 microfilaremic and five amicrofilaremic patients with Wuchereria bancrofti infections. Thorough clinical evaluations and detailed renal assessments were made prior to treatment and at multiple time points for 60 days following a standard twelve-day course of treatment with diethylcarbamazine (DEC). There were two important findings. First, even prior to DEC treatment, almost half of the microfilaremic patients had hematuria and/or proteinuria. Second, treatment with DEC induced these same abnormalities in almost all of the remaining microfilaremic patients. However, this DEC-induced hematuria and/or proteinuria was transient, and the long-term response to DEC in all of the microfilaremic patients was resolution of the abnormal renal findings during the two-month followup period. In the amicrofilaremic study patients, no hematuria or proteinuria was detected before, during, or after treatment with DEC.

Adolescent

Peritoneal B cells regulate the numbers of allotype-matched pre-B and B cells in bone marrow.

The mechanisms regulating growth and differentiation of B-cell precursors in adult bone marrow (BM) and/or selecting immunocompetent cells for peripheral export are poorly understood. We report here that small numbers of activated peritoneal B cells selectively suppress the numbers of small pre-B (B220+IgM-) and B (B220+IgM+) cells in BM, if transferred into syngeneic adult mice. No significant alterations are detected in other BM cell lineages or in peripheral lymphocytes of recipient mice. Both CD5+ and CD5- peritoneal B cells display this activity, but the same or higher numbers of similarly activated splenic B cells have no effect. Suppression of B-lineage cells is independent of T lymphocytes but requires that both donor and recipient are matched for immunoglobulin allotypes. These findings provide evidence for regulation of BM B-cell production by peripheral B cells, especially when located in the peritoneal cavity, and ascribe regulatory roles to the peritoneal B-cell compartment. They also could contribute to understanding the control of total B-lymphocyte numbers in the organism.

Animals

Normal serum immunoglobulins participate in the selection of peripheral B-cell repertoires.

In B-cell development, expression of immunoglobulin heavy-chain variable-region (VH) gene repertoires is determined by genetic mechanisms that favor rearrangement of the most D-proximal genes, resulting in overutilization of the VH7183 gene family early in ontogeny and in differentiating B cells of the adult bone marrow. Maturation of the immune system is accompanied by a decreased expression of VH7183 genes in the peripheral immunocompetent B-cell pool of adult animals. By comparing VH gene family expression in the bone marrow (emergent) and peripheral (available and actual) B-cell repertoires of germ-free and conventionally raised BALB/c mice, we found that peripheral selection of VH gene family utilization does not occur in germ-free animals. Reconstitution of germ-free mice with normal serum immunoglobulins purified from syngeneic donors reestablishes selection of VH7183-expressing B cells. Our results indicate that preimmune B-cell repertoires are selected in normal animals by environmental antigens and serum immunoglobulins.

Animals

Population dynamics of natural antibodies in normal and autoimmune individuals.

We have measured the quantities of naturally occurring autoantibodies in the serum of normal, unmanipulated individuals. These changes over time following broad-band complex dynamical patterns that are similar in mouse and man. The patterns more likely reflect the network architecture of the natural antibody repertoire, regulating the activation and decay of individual clones. The temporal changes of both disease-specific and nonspecific autoantibodies are consistently modified in autoimmune individuals.

Animals

Extrathymic origin of intestinal intraepithelial lymphocytes bearing T-cell antigen receptor gamma delta.

The kinetics of postnatal intestinal colonization by T cells carrying gamma delta and alpha beta T-cell antigen receptors were studied in nude and normal mice by flow cytometry and immunohistology. Furthermore, gamma delta and alpha beta T-cell development was analyzed in lethally irradiated mice that were reconstituted by fetal liver precursors with or without a thymus. Our results establish that a major subpopulation of gamma delta intestinal intraepithelial lymphocytes is produced from uncommitted precursors at extrathymic sites. This work further shows that a small pool of T cells carrying alpha beta T-cell receptors can also differentiate extrathymically from CD3- fetal liver precursors but with rates of production and peripheral expansion much reduced as compared with those observed in thymus-bearing animals.

Animals

Normal serum immunoglobulins influence the numbers of bone marrow pre-B and B cells.

The homeostatic mechanisms controlling B lymphocyte output from bone marrow are not well understood. The present experiments evaluated putative influences of circulating immunoglobulins (Ig) on bone marrow (BM) pre-B and B cell populations. Injections into normal mice of Ig isolated from normal mouse serum, resulted in a dose-dependent and reversible reduction in numbers of BM B lineage cells, in particular of small B220+ surface IgM- cells. Maximal effects were observed upon injection of isologous polyclonal Ig and were independent of mature T cells. These results suggest a feedback modulation of peripheral Ig on cellular activities in BM B lineage compartments, mediated by mechanisms that seem to involve the variable regions of the Ig molecule.

Animals